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    高炉喷煤喷吹自动化控制系统说明Word下载.docx

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    高炉喷煤喷吹自动化控制系统说明Word下载.docx

    1、传感器AbstractThe graduation project focused on the automatic control of blast furnace coal injection system, does not include coal grinding process control. Cntrol the process of automation and control, includingo coal powder storage warehouse, the middle tank,the injection tank, injection Explorer, f

    2、ront-end from the blast furnace coal injection powder distribution device to the branch pipe. The graduation project, a PCI only consider as a controlled injection sequence. The design includes: That the issue of background, origin, meaning, the main type of technology, at home and abroad PCI jet te

    3、chnology development prospects and the future development of. On the need for the sensors, valves, switches and other hardware equipment.Mainly carried out coal powder from the coal powder position to control the middle of the tank,pulverized coal injection in the middle tank to tank can back contro

    4、l from the pulverized coal injection into blast furnace tuyere spray cans of control, stop the injection control, the middle tank and the injection pressure control tank, coal stores, intermediate and spray cans blow tank temperature and pressure control of the security chain, hair spray, such as au

    5、tomatic measurement of the pressure control projects; the design of the main selection of the PLC control system selection, hardware configuration options, I / O table prepared mapping hardware wiring work.KeyWords:PLC; blast furnace pulverized coal injection; sensor详细摘要高炉喷煤技术始于1840年SMBanks关于喷吹焦炭和无烟

    6、煤的设想;世界最早的工业应用即是根据这一设想于18401845年间在法国博洛涅附近的马恩省炼铁厂实现的。由此背景引出本次毕业设计的题目高炉喷煤喷吹技术的自动化控制。课题主要阐述了高炉喷煤系统的喷吹工艺控制,不包括制粉工艺。在此项技术产生的一百多年间,发展却相对缓慢,基本无进展;直至20世纪60年代初,欧洲、中国、美国的一些工厂才陆续开始在高炉上试验喷煤。7O年代末,第二次石油危机的出现,加快了高炉喷煤技术的研究和发展,特别是欧洲和日本更是在实际应用上取得了重大突破。第一部分前言中阐述了高炉喷煤的定义,就是指从高炉风口向炉内直接喷吹磨细了的煤粉(无烟煤、烟煤或两者的混合煤粉以及褐煤),以代替焦炭

    7、向高炉提供热量和还原剂。然后由定义引出了采用此项技术的意义,它以低价的煤代替了日趋贫乏且价格昂贵的冶金焦,降低了焦化,使高炉炼铁的成本大幅下降。它是一种调剂炉况的手段,也改善炉缸工作状态,是高炉稳定顺行。然后,又介绍了此工艺的常用基本流程,根据制粉装置到高炉距离的远近、煤粉仓,喷吹罐安放位置的差异、喷吹管路的粗细、喷吹压力的高低、输送浓度的大小以及喷枪形式的不同,可以有直接喷吹、间接喷吹;串罐喷吹、并罐喷吹;总管喷吹、多支管喷吹;高压喷吹、常压喷吹;浓相喷吹、稀相喷吹和氧煤枪喷吹、常规枪喷吹等各种形式的喷吹。简介描述了几种较成熟的工业性生产流程:1、德国KvTTNER流程;2、美国阿姆科(AR

    8、MCO)流程;3、日本住友流程;4、日本川崎流程;5、卢森堡Paul Wurth流程;6、混合型流程;7 英钢联粒煤喷吹流程。再后简要介绍了几种新喷煤工艺,包括:1、富氧大喷煤量技术;2、利用等离子大量喷吹煤粉;3、复合喷吹技术;4、粒煤喷吹技术。在第一部分最后介绍了我国喷煤喷吹技术现状,进十几年这项技术在国内的进步和存在的问题,还包括对我国高炉发展前景的展望。第二大部分主要阐述了高炉喷煤喷吹自动化控制整体方案。首先对喷吹工艺及检测点布置进行了讲解,其中包括了所选用的三罐串罐喷吹所需放散阀、流化阀、充压阀、均压阀、灭火氮气阀、下锥形阀、上锥形阀、给料器和下煤球阀的分配进行了比较细致的叙述并附图

    9、对安装位置进行说明,又对各种所需测量设备(如压力、温度、重量、气体含量等)、所需数量、安装位置进行了描述。然后在附图的基础上进行喷吹控制过程描述。先介绍了基本操作方式:全自动操作、手动操作和检修操作,然后是主要进行的操作过程总述(包括煤粉从煤粉仓到中间罐倒罐控制,煤粉从中间罐到喷吹罐倒罐控制,煤粉从喷吹罐喷到高炉风口中的控制,停止向高炉喷吹煤粉的控制,安全连锁控制程序),最后详细说明了具体操作过程。中间罐加料:中间罐加料前的条件为中间罐必须为“空信号”, 压力必须小于0.02MPa,放散阀处于“打开”状态,充压阀、流化阀、上锥阀和下锥阀处于“关闭”状态、中间罐与喷吹罐之间的均压阀处于“关闭”状

    10、态;满足上述条件后在进行倒罐操作开煤粉仓下锥形阀,开中间罐上锥形阀,关煤粉仓放散阀,开煤粉仓流化阀,中间罐“料满”信号发出时再进行以下操作,关煤粉仓流化阀,开煤粉仓放散阀,关煤粉仓下锥形阀,关中间罐上锥形阀,煤粉从煤粉仓到中间罐倒罐顺序结束,中间罐处于“料满”位置。喷吹罐加料:喷吹罐内煤量显示下限,自动发出允许加料信号,喷吹罐内压力达到设定值,中间罐“料满”; 倒罐,关中间罐放散阀,开中间罐充压阀,中间罐与喷吹罐压差小于设定值时,关闭充压阀,打开两罐间均压阀,开中间罐下锥形阀,开喷吹罐上锥形阀,开中间罐流化阀,中间罐“料空”信号来后,进行下列操作,关中间罐流化阀,关中间罐下锥形阀,关喷吹罐上锥

    11、形阀,关中间罐充压阀,关中间罐与喷吹罐间均压阀,开中间罐放散阀,煤粉从中间罐到喷吹罐倒罐顺序完成。喷吹控制:前提条件得到高炉“允许喷吹”信号,喷吹罐内料位不低于下限,满足安全连锁要求,检查喷煤管路上手动阀门的状态,人工输入正常;喷吹控制,开喷吹风阀,开安全阀,开喷吹罐下煤球阀,开喷吹罐流化阀,启动给料器。最后是停喷控制(发出停喷指令终止各“倒罐”操作,关喷吹罐下煤球阀,停给料器,关安全阀,关喷吹风阀)和对三罐及喷吹管道的压力、温度的安全连锁控制。第三部分主要阐述了所用的各种测量设备(包括料位、压力、温度、氧含量、一氧化碳含量和重量测量设备)的选型和其技术指标的说明,所选用控制设备采用SIEME

    12、NS公司的SIMATIC S7系列的SIMATIC S7-300通用型PLC的CPU(6ES7 315-2AG10-0AB0),模拟量I/O模块(6ES7 331-7KF02-0AB0),数字量输入I/O模块(6ES7 321-1EH01-0AA0),数字量输出I/O模块(6ES7 322-1HH00-0AA0)的选型和详细数据说明。Detailed SummaryBlast furnace pulverized coal injection technology in 1840 at S. M. Banks on the injection of coke and anthracite id

    13、ea; the worlds first industrial applications are based on the idea that in 1840 1845 in the French province of Bologna near the iron works to achieve the Isle of Man. This background leads to the topic of graduation PCI design automation control injection technology. The main topics of the blast fur

    14、nace pulverized coal injection system to control the injection process, does not include the milling process. In the technologies used to produce more than one hundred years, the development is relatively slow, the basic lack of progress; the 20th century until the early 60s, Europe, China, the Unit

    15、ed States before some of the factory started in the blast furnace pulverized coal injection on the test. 7O at the end of the second oil crisis in the emergence of the blast furnace pulverized coal injection technology to speed up research and development, especially in Europe and Japan is in the pr

    16、actical application has been made a major breakthrough. Foreword to the first part of the definition of a blast furnace pulverized coal injection is from the blast furnace tuyere direct injection to the ground of the coal (anthracite, bituminous coal, or both, as well as a mixture of pulverized lign

    17、ite), to replace the coke to the blast furnace to provide heat and reducing agent. Led by the definition of the meaning of the use of this technology, it replaces the low-cost coal and increasingly scarce expensive metallurgical coke, coking reduced so that the cost of blast furnace substantially re

    18、duced. It is a means of regulating the status of furnace, but also work to improve the hearth, and is stable antegrade blast. And then introduced the basic process technology used, under the milling device to the distance from the blast furnace, coal stores, injection tank placement differences in t

    19、he thickness pipeline injection, injection pressure is high or low concentrations of the size of transmission as well as different forms of spray, you can have a direct injection, indirect injection; string injection cans and cans of injection; Explorer injection, multi-branch injection; high-pressu

    20、re injection, pressure injection; dense phase injection, dilute coal injection and oxygen injection machine, injection machine and other conventional forms of injection. Profile describes some of the more mature industrial production processes: 1, Germany KvTTNER process; 2, the United States armco

    21、(ARMCO) process; 3, Japans Sumitomo processes; 4, flow Kawasaki, Japan; 5, Luxembourg Paul Wurth process; 6 , mixed-type process; 7 British Steel Union Coal particle injection process. Again after a brief introduction of several new coal technology, including: 1, the volume of oxygen-rich large coal

    22、 technology; 2, the use of a large number of plasma pulverized coal injection; 3, compound injection techniques; 4, tablets coal injection technology. Finally, in the first part of the status quo of Chinas coal injection technology, more than ten years into the technology progress in China and probl

    23、ems, but also the development prospects of Chinas outlook for blast furnace. The second most of the major coal injection on blast furnace automation control package. First point of injection and detection process carried out on the layout, including the choice of three cans of string emission requir

    24、ements can injection valve, fluid valve, charge pressure valve are pressure valves, fire nitrogen valve, conical valve under , the cone valve, under the coal feeder and the distribution of the ball valve were compared and described in detail on the installation drawings indicate the location, but al

    25、so all the necessary measuring equipment (such as pressure, temperature, weight, gas content, etc.) , the required number, a description of the installation location. And then in the graph on the basis of the control process described injection. First introduced the basic mode of operation: fully au

    26、tomatic operation, manual operation, and maintenance operations, and then is a major operation carried out by Overview (including coal from the coal inverted position to the intermediate tank can control, to the pulverized coal injection in the middle tank cans cans back control from the injection o

    27、f pulverized coal to blast furnace tuyere spray cans of control, stop the blast furnace pulverized coal injection control, security control procedures for the chain), and finally a detailed description of the specific operation. Tank feeding the middle: the middle of the pre-conditions can feed tank

    28、 for the middle must be an empty signal, the pressure must be less than 0.02MPa, emission valves in the open status, filling pressure valve, fluid valve, cone valve and the valve under the cone in the off state, intermediate between the cans and the cans are injection valve in the state; to meet the

    29、 above conditions can operate in open coal was under the cone valve position, open the middle of the cone-shaped tank valve, Bleeding valve clearance warehouse coal, the coal flow position of valve, the middle tank full feed signal when the following closing of coal flow valve position, the valve em

    30、ission coal warehouse, customs warehouse under the cone of pulverized coal valve off the middle of the cone-shaped tank valve, coal from the coal warehouse cans down to the middle of the order of the end cans, cans in the middle of position. Feed tank injection: injection volume of the tank showed t

    31、hat the lower limit of coal, to allow automatic feeding signal injection tank pressure settings to reach the middle tank ; inverted cans, Bleeding Tundish valve clearance, the tank filling the middle pressure valve, intermediate pressure tank and the injection tank is less than set value, the filling valve shut down, open the two cans were pressure between the valve and open the next among the tank valve cone, the cone-jet on the tank valve, open the middle fluid tank valve, the middle tank feed air signals, the following


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